INTERACTIONS OF OXYGEN RADICALS WITH AIRWAY EPITHELIUM

被引:87
作者
WRIGHT, DT [1 ]
COHN, LA [1 ]
LI, HF [1 ]
FISCHER, B [1 ]
LI, CM [1 ]
ADLER, KB [1 ]
机构
[1] N CAROLINA STATE UNIV, COLL VET MED, DEPT ANAT PHYSIOL SCI & RADIOL, RALEIGH, NC 27606 USA
关键词
ANTIOXIDANTS; REACTIVE OXYGEN SPECIES; 2ND-MESSENGERS; AIRWAY INFLAMMATION;
D O I
10.2307/3432221
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Reactive oxygen species (ROS) have been implicated in the pathogenesis of numerous disease processes. Epithelial cells lining the respiratory airways are uniquely vulnerable regarding potential for oxidative damage due to their potential for exposure to both endogenous (e.g., mitochondrial respiration, phagocytic respiratory burst, cellular oxidases) and exogenous (e.g., air pollutants, xenobiotics, catalase negative organisms) oxidants. Airway epithelial cells use several nonenzymatic and enzymatic antioxidant mechanisms to protect against oxidative insult. Nonenzymatic defenses include certain vitamins and low molecular weight compounds such as thiols. The enzymes superoxide dismutase, catalase, and glutatione peroxidase are major sources of antioxidant protection. Other materials associated with airway epithelium such as mucus, epithelial lining fluid, and even the basement membrane/extracellular matrix may have protective actions as well. When the normal balance between oxidants and antioxidants is upset, oxidant stress ensues and subsequent epithelial cell alterations or damage may be a critical component in the pathogenesis of several respiratory diseases. Oxidant stress may profoundly alter lung physiology including pulmonary function (e.g., forced expiratory volumes, flow rates, and maximal inspiratory capacity), mucociliary activity, and airway reactivity. ROS may induce airway inflammation; the inflammatory process may serve as an additional source oi ROS in airways and provoke the pathophysiologic responses described. On a more fundamental level, cellular mechanisms in the pathogenesis of ROS may involve activation of intracellular signaling enzymes including phospholipases and protein kinases stimulating the release of inflammatory lipids and cytokines. Respiratory epithelium may be intimately involved in defense against, and pathophysiologic changes invoked by, ROS.
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页码:85 / 90
页数:6
相关论文
共 90 条
[1]   OXYGEN METABOLITES STIMULATE RELEASE OF HIGH-MOLECULAR-WEIGHT GLYCOCONJUGATES BY CELL AND ORGAN-CULTURES OF RODENT RESPIRATORY EPITHELIUM VIA AN ARACHIDONIC ACID-DEPENDENT MECHANISM [J].
ADLER, KB ;
HOLDENSTAUFFER, WJ ;
REPINE, JE .
JOURNAL OF CLINICAL INVESTIGATION, 1990, 85 (01) :75-85
[2]   PLATELET-ACTIVATING-FACTOR PROVOKES RELEASE OF MUCIN-LIKE GLYCOPROTEINS FROM GUINEA-PIG RESPIRATORY EPITHELIAL-CELLS VIA A LIPOXYGENASE-DEPENDENT MECHANISM [J].
ADLER, KB ;
AKLEY, NJ ;
GLASGOW, WC .
AMERICAN JOURNAL OF RESPIRATORY CELL AND MOLECULAR BIOLOGY, 1992, 6 (05) :550-556
[3]  
ALLEGRA L, 1991, AM J MED, V91, pS67
[4]   MORPHOLOGICAL INJURY AND LIPID-PEROXIDATION IN MONOLAYER-CULTURES OF RABBIT TRACHEAL EPITHELIUM EXPOSED INVITRO TO OZONE [J].
ALPERT, SE ;
KRAMER, CM ;
HAYES, MM ;
DENNERY, PA .
JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH, 1990, 30 (04) :287-304
[5]  
[Anonymous], 1990, STRESS RESPONSES PLA
[6]  
BALDWIN SR, 1986, LANCET, V1, P11
[7]   REACTIVE OXYGEN SPECIES AND AIRWAY INFLAMMATION [J].
BARNES, PJ .
FREE RADICAL BIOLOGY AND MEDICINE, 1990, 9 (03) :235-243
[8]  
BAST A, 1991, AM J MED, V91, pS2
[9]   INOSITOL PHOSPHATES AND CELL SIGNALING [J].
BERRIDGE, MJ ;
IRVINE, RF .
NATURE, 1989, 341 (6239) :197-205
[10]  
BUHL R, 1989, LANCET, V2, P1294